Multiscale modeling of form and function.

TitleMultiscale modeling of form and function.
Publication TypeJournal Article
Year of Publication2009
AuthorsEngler AJ, Humbert PO, Wehrle-Haller B, Weaver VM
Date Published2009 Apr 10
KeywordsAnimals, Biological Evolution, Cell Adhesion, Cell Aggregation, Cell Communication, Extracellular Matrix, Genotype, Homeostasis, Morphogenesis, Phenotype, Proteins, Signal Transduction

Topobiology posits that morphogenesis is driven by differential adhesive interactions among heterogeneous cell populations. This paradigm has been revised to include force-dependent molecular switches, cell and tissue tension, and reciprocal interactions with the microenvironment. It is now appreciated that tissue development is executed through conserved decision-making modules that operate on multiple length scales from the molecular and subcellular level through to the cell and tissue level and that these regulatory mechanisms specify cell and tissue fate by modifying the context of cellular signaling and gene expression. Here, we discuss the origin of these decision-making modules and illustrate how emergent properties of adhesion-directed multicellular structures sculpt the tissue, promote its functionality, and maintain its homeostasis through spatial segregation and organization of anchored proteins and secreted factors and through emergent properties of tissues, including tension fields and energy optimization.

Alternate JournalScience
PubMed ID19359578
Grant ListR01-CA078731 / CA / NCI NIH HHS / United States